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Hydrodynamic behavior in a moving granular bed filter for modeling on char separation during the biomass fast pyrolysis process

机译:移动颗粒床过滤器中的流体动力学行为,用于模拟生物质快速热解过程中的焦炭分离

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摘要

Moving granular bed filters (MGBFs) are the promising approach to improve the quality of pyrolysis oil by removing char particles from fast pyrolysis vapor streams. To minimize the commercial MGBF system, the inner MGBF structures were modified, resulting in differential granular media velocities between inlet and outlet gas stream. The modified structure was applied to increase the removal efficiency under the same superficial gas velocity. The experiments were conducted at room temperature and the designed parameters included the insert length and angle of inserted plates in the bottom of MGBF. In this study, the insert plates were used to distinguish the MGBF into two particle flow streams in the same section. The section area was the function of particle response angle, insert length, insert angle, and angle of the MGBF boundary plate. An accurate equation for determining the mass flow rate of the bed material particle and section area was proposed in this study. In addition, cold model filter tests were conducted on differential designs for three sets of flow fields. These results show that differential flow field designs can effectively enhance filtration efficiency. Under the same filtration pressure decline or loss, the filtration efficiency can be increased from the baseline of 95.4% to 99.9%.
机译:移动颗粒床过滤器(MGBFs)是通过从快速热解蒸气流中去除焦炭颗粒来提高热解油质量的有前途的方法。为了最大程度地减少商用MGBF系统,对内部MGBF结构进行了修改,导致入口和出口气流之间的颗粒介质流速不同。在相同的表观气体速度下,应用改进的结构来提高去除效率。实验在室温下进行,设计的参数包括MGBF底部的插入长度和插入板的角度。在这项研究中,使用插入板将MGBF区分为同一部分中的两个粒子流。截面积是颗粒响应角,插入长度,插入角和MGBF边界板角度的函数。提出了确定床料颗粒质量流量和断面面积的精确方程。此外,对三组流场的差分设计进行了冷模型过滤器测试。这些结果表明,差动流场设计可以有效地提高过滤效率。在相同的过滤压力下降或损失的情况下,过滤效率可以从基准的95.4%提高到99.9%。

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